Departamento de Química Física y Analítica, Universidad de Oviedo, 33006, Oviedo, Spain.
Departamento de Química Física y Analítica, Universidad de Oviedo, 33006, Oviedo, Spain.
Talanta. 2021 Mar 1;224:121732. doi: 10.1016/j.talanta.2020.121732. Epub 2020 Oct 5.
Miniaturization is one of the main requirements in the design of portable devices that allow in-field analysis. This is especially interesting in environmental monitoring, where the time of the sample-to-result process could be decreased considerably by approaching the analytical platforms to the sampling point. We employed traditional mass-produced and low-cost elements (micropipette tips and pins) in an out-of-box application to generate an innovative and cost-effective platform for analytical purposes. We have designed simple and easy-to-use electrochemical cells inside polypropylene micropipette tips with three stainless-steel pins acting as the working, reference and counter electrodes of a potentiostatic system. The pin acting as working electrode was previously coated with carbon ink, meanwhile the rest were used unmodified. In this way, electrochemical in-the-tip measurements were done directly using low volumes (μL) of sample. The devices showed good reproducibility, with a relative standard deviation of 7% (n = 5) for five different tip-based complete electrochemical cells. As a proof-of-concept, its utility has been probed by the determination of an anionic surfactant (sodium dodecyl sulphate, SDS) in water through its interaction with methylene blue (MB). Two different alternatives were presented based on the: 1) increase in the current intensity of the cathodic peak of MB due to the presence of SDS; 2) electrochemical determination of the MB remaining in the aqueous phase after extraction of the pair SDS-MB to an organic medium.
微型化是设计允许现场分析的便携式设备的主要要求之一。这在环境监测中尤其有趣,通过将分析平台接近采样点,可以大大缩短样品到结果的处理时间。我们在现成的应用中使用传统的批量生产且低成本的元件(微量移液器吸头和针),以生成一种创新且具有成本效益的分析平台。我们在聚丙烯微量移液器吸头内部设计了简单易用的电化学池,三个不锈钢针作为恒电位系统的工作、参比和对电极。用作工作电极的针之前涂有碳墨,而其余的则未进行修饰。通过这种方式,直接使用低体积(μL)的样品进行了针尖内的电化学测量。该装置具有良好的重现性,对于五个不同的基于吸头的完整电化学池,相对标准偏差为 7%(n=5)。作为概念验证,通过其与亚甲蓝(MB)的相互作用来测定水中的阴离子表面活性剂(十二烷基硫酸钠,SDS),探测了其实用性。提出了两种不同的方案:1)由于 SDS 的存在,MB 的阴极峰电流强度增加;2)萃取 SDS-MB 对到有机介质后,在水相中电化学测定 MB 的剩余量。